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- Lean.Elab.Term.elabSort stx x = do let __do_lift ← Lean.Elab.Term.elabOptLevel stx[1] pure (Lean.mkSort __do_lift)
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- Lean.Elab.Term.elabTypeStx stx x = do let __do_lift ← Lean.Elab.Term.elabOptLevel stx[1] pure (Lean.mkSort (Lean.mkLevelSucc __do_lift))
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the method resolveName
adds a completion point for it using the given
expected type. Thus, we propagate the expected type if stx[0]
is an identifier.
It doesn't "hurt" if the identifier can be resolved because the expected type is not used in this case.
Recall that if the name resolution fails a synthetic sorry is returned.
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- Lean.Elab.Term.elabNoImplicitLambda stx expectedType? = Lean.Elab.Term.elabTerm stx[1] (Lean.Elab.Term.mkNoImplicitLambdaAnnotation <$> expectedType?)
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- Lean.Elab.Term.elabStrLit stx x = match stx.isStrLit? with | some val => pure (Lean.mkStrLit val) | none => Lean.Elab.throwIllFormedSyntax
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- Lean.Elab.Term.elabRawNatLit stx x = match stx[1].isNatLit? with | some val => pure (Lean.mkRawNatLit val) | none => Lean.Elab.throwIllFormedSyntax
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- Lean.Elab.Term.elabCharLit stx x = match stx.isCharLit? with | some val => pure (Lean.mkApp (Lean.mkConst `Char.ofNat) (Lean.mkRawNatLit val.toNat)) | none => Lean.Elab.throwIllFormedSyntax
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- Lean.Elab.Term.elabQuotedName stx x = match stx[0].isNameLit? with | some val => pure (Lean.toExpr val) | none => Lean.Elab.throwIllFormedSyntax
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- Lean.Elab.Term.elabDoubleQuotedName stx x = do let __do_lift ← liftM (Lean.Elab.realizeGlobalConstNoOverloadWithInfo stx[2]) pure (Lean.toExpr __do_lift)
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- Lean.Elab.Term.elabTypeOf stx x = do let __do_lift ← Lean.Elab.Term.elabTerm stx[1] none liftM (Lean.Meta.inferType __do_lift)
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